An approach for integrating toxicogenomic data in risk assessment: the dibutyl phthalate case study

Susan Y Euling1, Chad M Thompson, Weihsueh A Chiu

  • 1National Center for Environmental Assessment, Office of Research and Development, U.S. Environmental Protection Agency, Washington, DC, USA.

Keywords:
3 beta-hydroxysteroid dehydrogenase/delta-5–delta-4 isomerase type IIADMEAGDALDH2ARBBDR modelCNPsCYP2D6Cyp11a1/P450sccCyp17a1Cyp2b1Cyp3a1DBPDEGDEHPD–REDCEndocrine disrupting chemicalGOHsd3bIRISInsl3Integrated Risk Information SystemMBPMOAMale developmentNIEHSNOAELNational Institute of Environmental Health SciencesPBPK modelingPhthalatesRT-PCRRisk assessmentSDSTARScarb1Science to Achieve ResultsSprague–DawleyStarTTDTDSTGxTKTestosteroneToxicogenomicU.S. Environmental Protection AgencyUDP glucuronosyltransferase 2B1UF(H)US EPAUgt2b1WOEabsorption, distribution, metabolism, and excretionaldehyde dehydrogenase-2androgen receptoranogenital distancebiologically based dose–response modelcopy number polymorphismscytochrome P450 2D6cytochrome P450, family 11, subfamily a, polypeptide 1cytochrome P450, family 17, subfamily a, polypeptide 1cytochrome P450, family 2, subfamily b, polypeptide 1cytochrome P450, family 3, subfamily a, polypeptide 1di-(2-ethylhexyl) phthalatedibutyl phthalatedifferentially-expressed genedose–responseendocrine disrupting chemicalgene ontologyinsulin-like 3mode of actionmonobutyl phthalateno observed adverse effect levelphysiologically based pharmacokinetic modelingreverse transcription-polymerase chain reactionscavenger receptor class B, member 1steroidogenic acute regulatory proteintesticular dysgenesis syndrometestosteronetoxicodynamicstoxicogenomictoxicokineticsuncertainty factor for uncertainty in extrapolating animal data to humans (i.e., interspecies uncertainty) (http://www.epa.gov/IRIS/)weight-of-evidence

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